论文标题

可居住区系外行星K2-18b的内部和气氛

The interior and atmosphere of the habitable-zone exoplanet K2-18b

论文作者

Madhusudhan, Nikku, Nixon, Matthew C., Welbanks, Luis, Piette, Anjali A. A., Booth, Richard A.

论文摘要

旋转的系外行星为其检测和大气特征带来了宝贵的机会。从最近推断出H $ _2 $ O在这种气氛中,包括可居住区系外行星K2-18B的推论可以明显看出这一点。在地球和海王星之间的散装密度下,K2-18b可能会有H/HE信封。但是,这种包膜的程度和内部的热力学条件仍未开发。在目前的工作中,我们根据K2-18b的大气和大气传播光谱研究了大气和内部特性。我们将大气限制为h $ _2 $ -RICH,h $ _2 $ o的体积混合率为$ 0.02-14.8 $%,与以前的研究一致,并发现CH $ _4 $和NH $ _3 $的耗竭,表明化学药品不平衡。我们没有在可观察到的气氛中最终检测到云/危险。我们使用散装参数并检索大气特性来限制行星中的内部结构和热力学条件。内部的限制允许在具有巨大的信封和薄膜的岩石世界之间进行多种情况。我们将H/HE信封的质量分数限制为$ \ Lessim 6 $%;跨越$ \ Lessim 10^{ - 5} $,主要是水上世界的$ \ sim6 $%。 H $ _2 $ O层表面的热力学条件范围从超临界到液相,一系列溶液允许在K2-18B上可居住的条件。我们的结果表明,可居住条件的潜力不一定限于类似地球的岩石系外行星。

Exoplanets orbiting M dwarfs present a valuable opportunity for their detection and atmospheric characterisation. This is evident from recent inferences of H$_2$O in such atmospheres, including that of the habitable-zone exoplanet K2-18b. With a bulk density between Earth and Neptune, K2-18b may be expected to possess a H/He envelope. However, the extent of such an envelope and the thermodynamic conditions of the interior remain unexplored. In the present work, we investigate the atmospheric and interior properties of K2-18b based on its bulk properties and its atmospheric transmission spectrum. We constrain the atmosphere to be H$_2$-rich with a H$_2$O volume mixing ratio of $0.02-14.8$%, consistent with previous studies, and find a depletion of CH$_4$ and NH$_3$, indicating chemical disequilibrium. We do not conclusively detect clouds/hazes in the observable atmosphere. We use the bulk parameters and retrieved atmospheric properties to constrain the internal structure and thermodynamic conditions in the planet. The constraints on the interior allow multiple scenarios between rocky worlds with massive H/He envelopes and water worlds with thin envelopes. We constrain the mass fraction of the H/He envelope to be $\lesssim 6$%; spanning $\lesssim 10^{-5}$ for a predominantly water world to $\sim6$% for a pure iron interior. The thermodynamic conditions at the surface of the H$_2$O layer range from the super-critical to liquid phases, with a range of solutions allowing for habitable conditions on K2-18b. Our results demonstrate that the potential for habitable conditions is not necessarily restricted to Earth-like rocky exoplanets.

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